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High‐resolution food webs based on nitrogen isotopic composition of amino acids

机译:基于氨基酸的氮同位素组成的高分辨率食物网

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摘要

AbstractFood webs are known to have myriad trophic links between resource and consumer species. While herbivores have well-understood trophic tendencies, the difficulties associated with characterizing the trophic positions of higher-order consumers have remained a major problem in food web ecology. To better understand trophic linkages in food webs, analysis of the stable nitrogen isotopic composition of amino acids has been introduced as a potential means of providing accurate trophic position estimates. In the present study, we employ this method to estimate the trophic positions of 200 free-roaming organisms, representing 39 species in coastal marine (a stony shore) and 38 species in terrestrial (a fruit farm) environments. Based on the trophic positions from the isotopic composition of amino acids, we are able to resolve the trophic structure of these complex food webs. Our approach reveals a high degree of trophic omnivory (i.e., noninteger trophic positions) among carnivorous species such as marine fish and terrestrial hornets.This information not only clarifies the trophic tendencies of species within their respective communities, but also suggests that trophic omnivory may be common in these webs.
机译:摘要众所周知,食物网在资源和消费者物种之间具有无数的营养联系。尽管食草动物具有良好的营养趋向,但表征高阶消费者营养位的困难仍然是食物网生态学中的主要问题。为了更好地理解食物网中的营养联系,已引入对氨基酸的稳定氮同位素组成的分析,作为提供准确营养位置估计的潜在手段。在本研究中,我们采用这种方法来估计200种自由漫游生物的营养位置,它们代表沿海海洋(石质海岸)中的39种和陆地(水果农场)环境中的38种。基于氨基酸同位素组成的营养位置,我们能够解析这些复杂食物网的营养结构。我们的方法揭示了食肉物种(例如海鱼和陆地黄蜂)中高度营养的杂食性(即非完整营养位置),这些信息不仅阐明了其各自社区内物种的营养趋向,而且表明营养杂食性可能是在这些网站中很常见。

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